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Article

Analysis of Stainless-Steel Tape Dynamic Behavior and Its Impact on Raster Scale Formation Accuracy

by
Donatas Gurauskis
1,
Albinas Kasparaitis
2,
Edgar Sokolovskij
3,*,
Jonas Matijošius
1 and
Artūras Kilikevičius
1
1
Institute of Mechanical Science, Vilnius Gediminas Technical University, LT-10105 Vilnius, Lithuania
2
Department of Mechanical and Material Engineering, Vilnius Gediminas Technical University, LT-10105 Vilnius, Lithuania
3
Department of Automobile Engineering, Vilnius Gediminas Technical University, LT-10105 Vilnius, Lithuania
*
Author to whom correspondence should be addressed.
Machines 2025, 13(2), 124; https://doi.org/10.3390/machines13020124
Submission received: 18 December 2024 / Revised: 22 January 2025 / Accepted: 4 February 2025 / Published: 7 February 2025
(This article belongs to the Section Robotics, Mechatronics and Intelligent Machines)

Abstract

The formation of raster structures on stainless-steel tapes requires high-precision mechatronic systems to ensure accuracy and stability during the process. This article gives a thorough look at a redesigned precise mechatronic system that can make coded or raster linear scales using a dynamic laser process. These scales are critical components in linear measuring systems, such as optical encoders, where accuracy and reliability are paramount. One critical challenge is maintaining precise tape dynamics to mitigate errors caused by slippage at the tape-roller interface and mechanical vibrations. The main goal of this study is to look at these changing behaviors in a redesigned tape displacement measurement unit. Unlike older models, this one does not use a pneumatic roller system; instead, the tape drives the measuring roller directly. Experiments show that the new design greatly lowers errors caused by slippage and vibration, which makes it easier for the tape to move in sync with the laser activation. Additionally, the updated system exhibits enhanced performance in terms of stability, achieving higher accuracy of the raster structure compared to the previous design. These findings underscore the importance of dynamic analysis in optimizing tape displacement measurement units for high-precision raster formation processes.
Keywords: raster scale formation; stainless-steel tape dynamics; tape slippage; vibration analysis raster scale formation; stainless-steel tape dynamics; tape slippage; vibration analysis

Share and Cite

MDPI and ACS Style

Gurauskis, D.; Kasparaitis, A.; Sokolovskij, E.; Matijošius, J.; Kilikevičius, A. Analysis of Stainless-Steel Tape Dynamic Behavior and Its Impact on Raster Scale Formation Accuracy. Machines 2025, 13, 124. https://doi.org/10.3390/machines13020124

AMA Style

Gurauskis D, Kasparaitis A, Sokolovskij E, Matijošius J, Kilikevičius A. Analysis of Stainless-Steel Tape Dynamic Behavior and Its Impact on Raster Scale Formation Accuracy. Machines. 2025; 13(2):124. https://doi.org/10.3390/machines13020124

Chicago/Turabian Style

Gurauskis, Donatas, Albinas Kasparaitis, Edgar Sokolovskij, Jonas Matijošius, and Artūras Kilikevičius. 2025. "Analysis of Stainless-Steel Tape Dynamic Behavior and Its Impact on Raster Scale Formation Accuracy" Machines 13, no. 2: 124. https://doi.org/10.3390/machines13020124

APA Style

Gurauskis, D., Kasparaitis, A., Sokolovskij, E., Matijošius, J., & Kilikevičius, A. (2025). Analysis of Stainless-Steel Tape Dynamic Behavior and Its Impact on Raster Scale Formation Accuracy. Machines, 13(2), 124. https://doi.org/10.3390/machines13020124

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